新特提斯西南部的钙质annoplankton对中晚新世气候和海平面变化的响应

IF 1.5 4区 地球科学 Q2 PALEONTOLOGY Marine Micropaleontology Pub Date : 2024-01-12 DOI:10.1016/j.marmicro.2023.102329
Jihede Haj Messaoud , Nicolas Thibault , Mohammed H. Aljahdali , Chokri Yaich , Yang-Guang Gu
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引用次数: 0

摘要

我们研究了新特提斯西南部钙质浮游动物对中-晚始新世过渡的反应,并将我们的数据与已公布的 X 射线衍射(XRD)分析结果、X 射线荧光(XRF)元素含量以及沉积物粗馏分中微化石的丰度进行了比较。化石组合主要由 Reticulofenestra spp.(平均 44%)、Sphenolithus spp.(平均 20%)、Discoaster spp.(平均 18%)和 Pontosphaera spp.(平均 10%)组成。Zygrhablithus bijugatus 的相对丰度和 Chiasmolithus 的比率与目测评估一起用于评价保存情况。Sphenolithus-Reticulofenestra的更替发生在鲁特-巴顿边界的MECO之前。除了许多种类的Sphenoliths、Discoasterids和Coccolithaceae消失以及多个种类的reticulofenestrids首次出现所造成的进化梯度的重大影响之外,古环境条件也对钙质化石群产生了重大影响。有孔虫的丰度和浮游/底栖有孔虫的比例描述了海平面的相对变化。微化石群和沉积物的岩性组成追踪了整个卢特陶至普里阿本纪的古气候和古环境变化。鲁特纪中期气候干燥,鲁特纪晚期和巴顿纪早期水解条件变化加剧。普里阿本纪被认为是一个富营养化和受限制的生态系统,具有较高的细粒物质输入。
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Calcareous nannoplankton response to middle-late Eocene climate and sea-level changes in the SW Neo-Tethys

We investigate the response of calcareous nannoplankton to the middle-late Eocene transition in the SW Neo-Tethys and compare our data to published results from X-ray diffraction (XRD) analysis, element content from X-ray fluorescence (XRF) and the abundance of microfossils in the coarse fractions of the sediment. The nannofossil assemblage is mainly composed of Reticulofenestra spp. (avg. 44%), Sphenolithus spp. (avg. 20%), Discoaster spp. (avg. 18%) and Pontosphaera spp. (avg. 10%). The Relative abundance of Zygrhablithus bijugatus and the Chiasmolithus ratio are used with the visual assessment to evaluate the preservation. The Sphenolithus-Reticulofenestra turnover occurred before the MECO at the Lutetian-Bartonian boundary. Besides the significant influence of an evolutionary gradient caused by the disappearance of numerous species of Sphenoliths, Discoasterids, and Coccolithaceae, and the first appearance of multiple species of reticulofenestrids, paleoenvironmental conditions imposed a significant impact on the calcareous nannofossil assemblages. The abundance of ostracods and the planktic/benthic foraminifera ratio depict relative sea-level changes. The microfossil assemblages and the lithological composition of the sediments track paleoclimatic and paleoenvironmental changes across the Lutetian to Priabonian. Dry conditions marked the middle Lutetian, followed by increased variability in hydrolyzing conditions during the late Lutetian and early Bartonian. An eutrophic and restricted ecosystem with high fine-grained material input is suggested for the Priabonian.

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来源期刊
Marine Micropaleontology
Marine Micropaleontology 地学-古生物学
CiteScore
3.70
自引率
15.80%
发文量
62
审稿时长
26.7 weeks
期刊介绍: Marine Micropaleontology is an international journal publishing original, innovative and significant scientific papers in all fields related to marine microfossils, including ecology and paleoecology, biology and paleobiology, paleoceanography and paleoclimatology, environmental monitoring, taphonomy, evolution and molecular phylogeny. The journal strongly encourages the publication of articles in which marine microfossils and/or their chemical composition are used to solve fundamental geological, environmental and biological problems. However, it does not publish purely stratigraphic or taxonomic papers. In Marine Micropaleontology, a special section is dedicated to short papers on new methods and protocols using marine microfossils. We solicit special issues on hot topics in marine micropaleontology and review articles on timely subjects.
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